Nova Patents
US8991068B2

Energy efficient cycle for clothes dryer

Summary by NHIP

Variable Airflow Clothes Drying

The method divides a drying cycle into preheating, latent heat transfer, and sensible heat transfer stages. It varies airflow and heater power across these stages, providing low airflow with high inlet temperature during preheating and higher airflow during subsequent stages.

Claim Score by NHIP

Read claim 1, the broadest

Abstract

Energy efficiencies are achieved in a dryer or washer/dryer by selectively varying temperature ranges, time periods, heater power levels, and air flow rates. Efficiency improvements on the order of 16% were obtained over typical constant power, constant temperature, timed drying cycles by varying one or more of these parameters. Efficiencies can also be improved by drawing air from alternative warm sources such as an attic or warm external environment, or by heat recovery from dryer exhaust passages.

US8991068B2, drawing sheet 1
Sheet 1 of 13

Term

7.1 yearsleft in the term

Expires 15 November 2033, including 883 days of term adjustment.

  1. Priority and filed
  2. Granted
  3. Today
  4. Expires

23 claims: 2 independent, 21 dependent

  1. 1
    Broadest claimClaim Score 59, broad(NHIP)A method of drying wet clothes comprising:dividing a clothes drying cycle into at least three drying periods including (i) a preheating stage, (ii) a latent heat transfer stage, and (iii) a sensible heat transfer stage;and varying air flow rate and power input to heater, both together or separately, in at least one of the stages relative to another stage, wherein the varying step including providing a low air flow at high air inlet temperature in the preheating stage, and providing a higher air flow in the sensible heat transfer stage.
  2. 20
    A method of drying wet clothes comprising:dividing a clothes drying cycle into at least three drying periods including (i) a preheating stage, (ii) a latent heat transfer stage, and (iii) a sensible heat transfer stage;in the preheating stage, providing a low, first airflow at an elevated air inlet temperature, in the latent heat transfer stage, providing an increased, second airflow that is greater than the first airflow rate and at a lower air inlet temperature than the preheating stage, and in the sensible heat transfer stage increasing the airflow rate to a greatest, third airflow and at a lowest, air inlet temperature when compared to the preheating and sensible heat transfer stages.